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The Dyson digital motor V10.

Its ceramic shaft is cured at 1,600°C to make it 3 times harder than steel, yet with half the density. With the impeller moved from the front of motor to the back, axial flow draws in cooler air to reduce the temperature and allow the motor to spin at up to 125,000rpm.

  • 880 Layers of paper-thin laminated steel generate magnetic fields to spin the motor.
  • 79,000 G-force generated inside each of the 14 cyclones.
  • 125,000rpm The speed of our fastest ever motor.

"At Dyson, it’s invention that sets us apart. Cyclones that generate 79,000g to separate dust. Pioneering digital motors that are smaller, faster and more powerful. It’s our obsession. This is why nothing else really works like a Dyson vacuum."

Engineer James Dyson

14 patented cyclones.

Generating forces of more than 79,000g, the vacuum flings microscopic particles – such as pollen and even bacteria – into the bin. By arranging each of the 14 cyclones concentrically around the central axis of the machine, air flows more efficiently through it. As the cyclone narrows, air is accelerated from 45mph to 190km/h to create the centrifugal forces that capture fine particles.

Graphic of Dyson Cyclone V10™ vacuum cyclone array

In-line configuration.

The ‘point and shoot’ alignment of the motor, bin and cyclone allows air to be drawn directly from the cleaner head into the cyclones in a straight line. This, combined with the more powerful Dyson digital motor V10, increases suction power to 150 Air Watts – that’s 20% more than the Dyson V8™ vacuum cleaner.

Graphic of airflow comparison through Dyson V8™ vacuum and Dyson Cyclone V10™ vacuum

Whole-system filtration.

With an airtight gasket around the cyclone assembly and a pressurised rubber seal around the advanced filter, the whole system is fully sealed – preventing dust, allergens and bacteria from leaking back into the air. This means the vacuum retains 99.97% of dust as small as 0.3 microns, and expels cleaner air.1 Pre- and post-motor filters are combined into one unit for easier maintenance.

Acoustically engineered.

An aerodynamic motor housing regulates airflow paths around the motor, reducing noisy turbulence. It’s combined with acoustic material to absorb vibrations, a post-motor filter that dampens sound, and an acoustic baffle which further reduces volume by blocking the line of sight to the sound source.

Graphic of Dyson Cyclone V10™ vacuum acoustic system

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1Tested against ASTM F1977-04 (particles sized 0.3-0.5 microns), tested in MAX mode